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The actual riser consisting of concentric piping is represented by a circular pipe having equivalent resistance R r.
Characteristics of flow induced by electrohydrodynamic (EHD) gas pumps in circular pipe have been experimentally evaluated.
The Dean problem of steady viscous flow through a coiled circular pipe is studied numerically.
It is known in the previous researches that the swirl flow in circular pipe causes the temperature separation.
The capability of the smoothed-particle hydrodynamics (SPH) method to model supercritical flow in circular pipe bends is considered.
An experiment was carried out regarding natural circulation using a circular pipe consisting of a reverse U-shaped channel.
In this paper, transient heat transfer of a circular pipe subjected to an internal cyclic expanding heat source is investigated.
To verify the theory, large eddy simulations for a plane channel, circular pipe and nuclear rod bundle were successfully performed.
A conventional shock tube was used to accelerate a preignited flame bubble from a circular pipe into a larger vessel.
Results were compared with the flow inside the annulus of an equivalent straight square duct in a circular pipe for identical pumping power.
However, the results indicate that the current pipe, if well designed, can still perform much better than a circular pipe at the flow conditions specified in this paper.
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